Thermoplasmonic Controlled Optical Absorber Based on a Liquid Crystal Metasurface.

active control colloidal nanoparticles liquid crystals lithography-free metasurface thermoplasmonics

Journal

ACS applied materials & interfaces
ISSN: 1944-8252
Titre abrégé: ACS Appl Mater Interfaces
Pays: United States
ID NLM: 101504991

Informations de publication

Date de publication:
25 Oct 2023
Historique:
medline: 10 10 2023
pubmed: 10 10 2023
entrez: 10 10 2023
Statut: ppublish

Résumé

Metasurfaces can be realized by organizing subwavelength elements (e.g., plasmonic nanoparticles) on a reflective surface covered with a dielectric layer. Such an array of resonators, acting collectively, can completely absorb the resulting resonant wavelength. Unfortunately, despite the excellent optical properties of metasurfaces, they lack the tunability to perform as adaptive optical components. To boost the utilization of metasurfaces and realize a new generation of dynamically controlled optical components, we report our recent finding based on the powerful combination of an innovative metasurface-optical absorber and nematic liquid crystals (NLCs). The metasurface consists of self-assembled silver nanocubes (AgNCs) immobilized on a 50 nm thick gold layer by using a polyelectrolyte multilayer as a dielectric spacer. The resulting optical absorbers show a well-defined reflection band centered in the near-infrared of the electromagnetic spectrum (750-770 nm), a very high absorption efficiency (∼60%) at the resonant wavelength, and an elevated photothermal efficiency estimated from the time constant value (34 s). Such a metasurface-based optical absorber, combined with an NLC layer, planarly aligned via a photoaligned top cover glass substrate, shows homogeneous NLC alignment and an absorption band photothermally tunable over approximately 46 nm. Detailed thermographic studies and spectroscopic investigations highlight the extraordinary capability of the active metasurface to be used as a light-controllable optical absorber.

Identifiants

pubmed: 37816211
doi: 10.1021/acsami.3c09896
pmc: PMC10614192
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

49468-49477

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Auteurs

Francesca Petronella (F)

National Research Council of Italy, Institute of Crystallography, CNR-IC, Rome Division, Area della Ricerca Roma 1 Strada Provinciale 35d, n. 9, 00010 Montelibretti (RM), Italy.

Tristan Madeleine (T)

School of Mathematical Science, University of Southampton, Southampton SO17 1BJ, United Kingdom.

Vincenzo De Mei (V)

Department of Medico-Surgical Sciences and Biotechnologies Sapienza, University of Rome, 00185 Latina, Italy.

Federica Zaccagnini (F)

Department of Medico-Surgical Sciences and Biotechnologies Sapienza, University of Rome, 00185 Latina, Italy.

Marinella Striccoli (M)

National Research Council of Italy, Institute of Chemical and Physical Processes CNR-IPCF Bari Division, Via Orabona 4, 70126 Bari, Italy.

Giampaolo D'Alessandro (G)

School of Mathematical Science, University of Southampton, Southampton SO17 1BJ, United Kingdom.

Mariacristina Rumi (M)

Materials and Manufacturing Directorate, Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio 45433-7707, United States.

Jonathan Slagle (J)

Materials and Manufacturing Directorate, Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio 45433-7707, United States.

Malgosia Kaczmarek (M)

School of Physics and Astronomy, University of Southampton, Southampton SO17 1BJ, United Kingdom.

Luciano De Sio (L)

Department of Medico-Surgical Sciences and Biotechnologies Sapienza, University of Rome, 00185 Latina, Italy.
National Research Council of Italy, Licryl, Institute NANOTEC, 87036 Arcavacata di Rende, Italy.

Classifications MeSH